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Improvements of Adaptive Filtering by Optimal Projection to filter different artifact types on long duration EEG recordings

机译:最佳投影的自适应滤波的改进,可在长时间的脑电图记录中过滤不同的伪像类型

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Adaptive Filtering by Optimal Projection (AFOP) is an automatic method for reducing ocular and muscular artifacts on electro-encephalographic (EEG) recordings. This paper presents two additions to this method: an improvement of the stability of ocular artifact filtering and an adaptation of the method for filtering electrode artifacts. With these improvements, it is possible to reduce almost all the current types of artifacts, while preserving brain signals, particularly those characterising epilepsy. This generalised method consists of dividing the signal into several time-frequency windows, and in applying different spatial filters to each. Two steps are required to define one of these spatial filters: the first step consists of defining artifact spatial projection using the Common Spatial Pattern (CSP) method and the second consists of defining EEG spatial projection via regression. For this second step, a progressive orthogonalisation process is proposed to improve stability. This method has been tested on long-duration EEG recordings of epileptic patients. A neurologist quantified the ratio of removed artifacts and the ratio of preserved EEG. Among the 330 artifacted pages used for evaluation, readability was judged better for 78% of pages, equal for 20% of pages, and worse for 2%. Artifact amplitudes were reduced by 80% on average. At the same time, brain sources were preserved in amplitude from 70% to 95% depending on the type of waves (alpha, theta, delta, spikes, etc.). A blind comparison with manual Independent Component Analysis (ICA) was also realised. The results show that this method is competitive and useful for routine clinical practice.
机译:最佳投影自适应滤波(AFOP)是一种减少脑电图(EEG)记录上的眼部和肌肉伪影的自动方法。本文介绍了此方法的两个附加功能:改进了眼部伪影滤波的稳定性和对电极伪影滤波方法的改进。通过这些改进,可以减少几乎所有当前类型的伪像,同时保留脑信号,尤其是表征癫痫的信号。这种通用方法包括将信号分成几个时频窗口,并对每个窗口应用不同的空间滤波器。需要两个步骤来定义这些空间过滤器之一:第一步包括使用公共空间模式(CSP)方法定义工件空间投影,第二步包括通过回归定义EEG空间投影。对于第二步,提出了一种渐进正交化过程以提高稳定性。该方法已在癫痫患者的长时间脑电图记录中进行了测试。一名神经科医生量化了去除伪影的比例和保存的脑电图的比例。在用于评估的330个伪造页面中,判断为78%的页面更好的可读性,等于20%的页面,差的是2%。伪像振幅平均降低了80%。同时,根据波的类型(α,θ,δ,尖峰等),脑源的幅度可以保持在70%到95%之间。还实现了与手动独立成分分析(ICA)的盲目比较。结果表明,该方法具有竞争力,可用于常规临床实践。

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